Haystead C M, Gregory P, Sturgill T W, Haystead T A
Department of Pharmacology, University of Virginia, Charlottesville.
Eur J Biochem. 1993 Jun 1;214(2):459-67. doi: 10.1111/j.1432-1033.1993.tb17942.x.
Recently, Sowadski and colleagues [Knighton, D.R., Zheng, J., Eyck, L.F.T., Ashford, V.A., Xuong, N., Taylor, S.S. & Sowadski, J.M. (1991) Science 407, 407-420] reported the structure of a ternary complex of the catalytic subunit of cAMP-dependent protein kinase (cyclic A kinase), MgATP and a 20-residue inhibitor peptide, at a resolution of 0.27 nm. This structure has since been refined to 0.2-nm resolution and the orientation of the nucleotide and interactions of MgATP with numerous conserved residues at the active site defined [Zheng, J., Knighton, D.R., Eyck, L.F.T., Karlsson, R., Xuong, N., Taylor, S.S. & Sowadski, J.M. (1993) Biochemistry, in the press]. These studies revealed that the adenosine portion of ATP is buried deep within the catalytic cleft, with the alpha, beta and gamma phosphates protruding towards the opening of the cleft. The unique spatial positioning of MgATP within the catalytic cleft of cyclic A kinase and its interactions with conserved amino acids found in all protein kinases, led us to reconsider the use of ATP as an affinity ligand for the purification of these enzymes. In this paper, we describe a straightforward method for the synthesis of [gamma-32P]adenosine-5'-(gamma-4-aminophenyl)triphosphate for the covalent linkage of ATP to Sepharose through its gamma phosphate. In the presence of 20 microM ATP, adenosine-5'-(gamma-4-aminophenyl)triphosphate exhibited apparent Ki values of 103.6, 75.18, 176.28 and 120.00 microM against cyclic A kinase, mitogen-activated protein kinase (p42mapk), mitogen-activated protein kinase kinase and p60c-src, respectively. To illustrate the effectiveness of adenosine-5'-(gamma-4-aminophenyl)triphosphate-Sepharose as an affinity column for protein kinases, we have used the resin to purify rabbit skeletal muscle mitogen-activated protein kinase kinase over 19000-fold to homogeneity.
最近,索瓦茨基及其同事[奈顿,D.R.,郑杰,艾克,L.F.T.,阿什福德,V.A.,阮,N.,泰勒,S.S.和索瓦茨基,J.M.(1991年)《科学》407,407 - 420]报道了环磷酸腺苷依赖性蛋白激酶(环A激酶)催化亚基、MgATP和一个20个残基的抑制肽形成的三元复合物的结构,分辨率为0.27纳米。此后该结构已精修至0.2纳米分辨率,并且确定了核苷酸的取向以及MgATP与活性位点众多保守残基的相互作用[郑杰,奈顿,D.R.,艾克,L.F.T.,卡尔森,R.,阮,N.,泰勒,S.S.和索瓦茨基,J.M.(1993年)《生物化学》,即将发表]。这些研究表明,ATP的腺苷部分深埋在催化裂隙内,α、β和γ磷酸基团朝向裂隙开口突出。MgATP在环A激酶催化裂隙内独特的空间定位及其与所有蛋白激酶中保守氨基酸的相互作用,促使我们重新考虑将ATP用作亲和配体来纯化这些酶。在本文中,我们描述了一种直接的方法来合成[γ - 32P]腺苷 - 5' - (γ - 4 - 氨基苯基)三磷酸,用于通过其γ磷酸基团将ATP与琼脂糖共价连接。在20微摩尔ATP存在下,腺苷 - 5' - (γ - 4 - 氨基苯基)三磷酸对环A激酶、丝裂原活化蛋白激酶(p42mapk)、丝裂原活化蛋白激酶激酶和p60c - src的表观Ki值分别为103.6、75.18、176.28和120.00微摩尔。为了说明腺苷 - 5' - (γ - 4 - 氨基苯基)三磷酸 - 琼脂糖作为蛋白激酶亲和柱的有效性,我们使用该树脂将兔骨骼肌丝裂原活化蛋白激酶激酶纯化至同质,纯化倍数超过19000倍。